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Coated Plates

Download the Assay Development Handbook for a full list of related products

 

G-Biosciences offers a large selection of coated 96-well plates, known as our Well-Coated™ plates.

The plates are available as single 96-well plates or as 12 x 8-well strips in a 96-well holder.  The majority of the plates are supplied as clear, white and black plates for colorimetric, chemiluminescence and fluorescent detection systems respectively.

The Well-Coated™ plates are offered with the following coatings:

  • ♦ Protein A
  • ♦ Protein G
  • ♦ Protein A/G
  • ♦ Protein L
  • ♦ Antibody; Goat α-Mouse
  • ♦ Antibody; Goat α-Rabbit
  • ♦ Neutravidin
  • ♦ Streptavidin
  • ♦ Biotin
  • ♦ Nickel
  • ♦ Glutathione
  • ♦ Amine Binding
  • ♦ Sulfhydryl Binding
The Microplate Sealing Tape is clear, self-sticking tape for standard microplates.  Suitable for both 96-well and 384-well plates.   The precut, pressure-senstive tape seals and reseals the surface of the plates during incubations to prevent evaporationand allow more vigorous mixing. &nb..
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Well-Coated™ Amine Binding plates are designed to specifically bind primary amines of peptides, proteins and other molecules.  The Well-Coated™ Amine Binding plates are designed to overcome the inherent issues of passive adsorption for immobilizing peptides and other ligands for bin..
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Well-Coated™ Biotin plates are designed to specifically bind avidin, streptavidin or Neutravidin™ conjugated molecules, including enzyme conjugates.    Biotin exhibits an extraordinary binding affinity for avidin (Ka=1015M-1) and streptavidin (Ka=1015 M-1).  Biotin and a..
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Well-Coated™ Glutathione plates are designed to specifically bind GST (Glutathione S-Transferase) tagged proteins and peptides.  The plates have immobilized glutathione and can be used for the isolation of GST-tagged proteins direct from bacterial lysates and then used for subsequent ELIS..
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Well-Coated™ Neutravidin™ plates are designed to specifically bind biotinylated molecules, including biotin tagged antibodies, with minimal non-specific binding.  This is particular advantageous for antibodies known to denature upon direct binding to polystyrene plates.   ..
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Gene/Protein:
Well-Coated™ Nickel plates are designed to specifically bind 6X histidine (polyhistidine) tagged proteins and peptides.  The plates can be used for the isolation of polyhistidine-tagged proteins direct from bacterial lysates and then used for subsequent ELISA protocols.   The w..
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Well-Coated™ Protein A plates are designed to bind the constant (Fc) region of immunoglobulins ensuring that the antigen binding domain of the antibody is orientated away from the plate, offering maximum exposure of the binding site.  The immunoglobulin orientation on the Well-Coated&trad..
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Well-Coated™ Protein A/G plates are designed to bind the constant (Fc) region of immunoglobulins ensuring that the antigen binding domain of the antibody is orientated away from the plate, offering maximum exposure of the binding site.  Protein A-G contains 4 binding sites from protein A ..
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Well-Coated™ Protein G plates are designed to bind the constant (Fc) region of immunoglobulins ensuring that the antigen binding domain of the antibody is orientated away from the plate, offering maximum exposure of the binding site. The immunoglobulin orientation on the Well-Coated&trade..
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Well-Coated™ Protein L plates are designed to bind the kappa light chains of immunoglobulins without interfering with the antigen binding site.  The Well-Coated™ Protein L plates offer greater range of immunoglobulin classes and subclasses compared to Protein A, Protein G and Protei..
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Well-Coated™ Streptavidin plates are designed to specifically bind biotinylated molecules, including biotin tagged antibodies. This is particular advantageous for antibodies known to denature upon direct binding to polystyrene plates.    Biotin exhibits an extraordinary bindin..
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Well-Coated™ Sulfhydryl Binding plates are designed to specifically bind free sulfhydryls of peptides, proteins and other molecules.  The Well-Coated™ Sulfhydryl Binding plates are designed to overcome the inherent issues of passive adsorption for immobilizing peptides and other lig..
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